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A Three-Dimensional Spheroid Model to Investigate the Tumor-Stromal Interaction in Hepatocellular Carcinoma
Published on: September 30, 2021
Tumor-Selective Altered Glycosylation and Functional Attenuation of CD73 in Human Hepatocellular Carcinoma
Karel P Alcedo1, Andres Guerrero2, Venkatesha Basrur3
1Department of Cell Biology and Physiology University of North Carolina at Chapel Hill Chapel Hill NC.
Abstract:
CD73, a cell-surface N-linked glycoprotein that produces extracellular adenosine, is a novel target for cancer immunotherapy. Although anti-CD73 antibodies have entered clinical development, CD73 has both protumor and antitumor functions, depending on the target cell and tumor type. The aim of this study was to characterize CD73 regulation in human hepatocellular carcinoma (HCC). We examined CD73 expression, localization, and activity using molecular, biochemical, and cellular analyses on primary HCC surgical specimens, coupled with mechanistic studies in HCC cells. We analyzed CD73 glycan signatures and global alterations in transcripts encoding other N-linked glycoproteins by using mass spectrometry glycomics and RNA sequencing (RNAseq), respectively. CD73 was expressed on tumor hepatocytes where it exhibited abnormal N-linked glycosylation, independent of HCC etiology, tumor stage, or fibrosis presence. Aberrant glycosylation of tumor-associated CD73 resulted in a 3-fold decrease in 5'-nucleotidase activity (P < 0.0001). Biochemically, tumor-associated CD73 was deficient in hybrid and complex glycans specifically on residues N311 and N333 located in the C-terminal catalytic domain. Blocking N311/N333 glycosylation by site-directed mutagenesis produced CD73 with significantly decreased 5'-nucleotidase activity in vitro, similar to the primary tumors. Glycosylation-deficient CD73 partially colocalized with the Golgi structural protein GM130, which was strongly induced in HCC tumors. RNAseq analysis further revealed that N-linked glycoprotein-encoding genes represented the largest category of differentially expressed genes between HCC tumor and adjacent tissue. Conclusion: We provide the first detailed characterization of CD73 glycosylation in normal and tumor tissue, revealing a novel mechanism that leads to the functional suppression of CD73 in human HCC tumor cells. The present findings have translational implications for therapeutic candidate antibodies targeting cell-surface CD73 in solid tumors and small-molecule adenosine receptor agonists that are in clinical development for HCC.
Insights
This study reveals abnormal N-linked glycosylation of CD73 in hepatocellular carcinoma (HCC) tumors, leading to reduced enzyme activity. This finding offers new insights into CD73 regulation and potential therapeutic strategies for HCC.
Area of Science:
- Biochemistry and Molecular Biology
- Cancer Research
- Immunotherapy
Background:
- CD73 (Cluster of Differentiation 73) is a cell-surface glycoprotein producing extracellular adenosine, a target for cancer immunotherapy.
- CD73 exhibits dual protumor and antitumor functions, necessitating a deeper understanding of its regulation in specific cancers.
- Hepatocellular carcinoma (HCC) is a major global health concern, and novel therapeutic targets are continuously sought.
Purpose of the Study:
- To characterize the regulation of CD73 in human hepatocellular carcinoma (HCC).
- To investigate CD73 expression, localization, activity, and glycosylation patterns in HCC.
- To elucidate the functional impact of altered CD73 glycosylation on its enzymatic activity in HCC.
Main Methods:
- Analysis of CD73 expression, localization, and 5'-nucleotidase activity in primary HCC surgical specimens.
- Mass spectrometry glycomics to analyze CD73 glycan signatures.
- RNA sequencing (RNAseq) to assess global alterations in N-linked glycoprotein-encoding transcripts.
- Site-directed mutagenesis to investigate the role of specific glycosylation sites (N311, N333).
Main Results:
- Tumor-associated CD73 in HCC exhibited abnormal N-linked glycosylation, independent of tumor characteristics.
- Aberrant glycosylation led to a significant 3-fold decrease in CD73 5'-nucleotidase activity.
- Specific N-linked glycans on residues N311 and N333 were deficient, impacting catalytic activity.
- Glycosylation-deficient CD73 showed altered localization, partially colocalizing with GM130 in HCC tumors.
Conclusions:
- This study provides the first detailed characterization of CD73 glycosylation in normal and tumor tissues.
- A novel mechanism of CD73 functional suppression via aberrant glycosylation in HCC tumor cells was identified.
- Findings have translational implications for antibody-based therapies targeting CD73 and small-molecule agonists in HCC.
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